4.8 Article

Short-Term Plasticity at Hippocampal Mossy Fiber Synapses Is Induced by Natural Activity Patterns and Associated with Vesicle Pool Engram Formation

Journal

NEURON
Volume 107, Issue 3, Pages 509-+

Publisher

CELL PRESS
DOI: 10.1016/j.neuron.2020.05.013

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Funding

  1. European Research Council (ERC) under the European Union Horizon 2020 Research and Innovation Program [692692]
  2. Fond zur Forderung der Wissenschaftlichen Forschung [Z 312-B27, V 739B27]
  3. Scientific Service Units of IST Austria
  4. European Research Council (ERC) [692692] Funding Source: European Research Council (ERC)
  5. Austrian Science Fund (FWF) [V739] Funding Source: Austrian Science Fund (FWF)

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Post-tetanic potentiation (PTP) is an attractive candidate mechanismfor hippocampus-dependent short-term memory. Although PTP has a uniquely large magnitude at hippocampal mossy fiber-CA3 pyramidal neuron synapses, it is unclear whether it can be induced by natural activity and whether its lifetime is sufficient to support short-term memory. We combined in vivo recordings from granule cells (GCs), in vitro paired recordings from mossy fiber terminals and postsynaptic CA3 neurons, and flash and freeze electron microscopy. PTP was induced at single synapses and showed a low induction threshold adapted to sparse GC activity in vivo. PTP was mainly generated by enlargement of the readily releasable pool of synaptic vesicles, allowing multiplicative interaction with other plasticity forms. PTP was associated with an increase in the docked vesicle pool, suggesting formation of structural pool engrams. Absence of presynaptic activity extended the lifetime of the potentiation, enabling prolonged information storage in the hippocampal network.

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